cmvr-es/python/vision_servo/get_chessboard_position.py

117 lines
3.6 KiB
Python
Raw Permalink Normal View History

#!/usr/bin/env python3
# -*- coding: utf-8 -*-
"""
实时检测红色圆点并获取 3D 坐标 (m)
深度图对齐到彩色图
"""
import cv2
import numpy as np
import pyrealsense2 as rs
2025-10-09 16:31:21 +08:00
import sys
import time
2025-10-09 16:31:21 +08:00
# 把.so所在目录加入 Python 路径
sys.path.append("/home/lgv/cmvr/cmvr-es/cmake-build-debug/example")
# 导入机器人控制模块
from robot_wrapper import Robot
def init_realsense():
2025-10-09 16:31:21 +08:00
"""初始化 RealSense 管道并返回 pipeline 和 align 对象"""
pipeline = rs.pipeline()
config = rs.config()
2025-10-09 16:31:21 +08:00
config.enable_stream(rs.stream.depth, 1280, 720, rs.format.z16, 30)
config.enable_stream(rs.stream.color, 1280, 720, rs.format.bgr8, 30)
profile = pipeline.start(config)
align = rs.align(rs.stream.color)
return pipeline, align
2025-10-09 16:31:21 +08:00
def get_closest_red_point(pipeline, align, vis_path=None, warmup=30,
hough_params=None):
"""
获取最近红色圆点的 3D 坐标
返回 (x, y, z) None如果没检测到
"""
2025-10-09 16:31:21 +08:00
if hough_params is None:
hough_params = dict(dp=1.2, minDist=20,
param1=50, param2=15,
minRadius=5, maxRadius=50)
# 丢掉前几帧,让相机稳定
for _ in range(warmup):
pipeline.wait_for_frames()
frames = pipeline.wait_for_frames()
aligned_frames = align.process(frames)
depth_frame = aligned_frames.get_depth_frame()
color_frame = aligned_frames.get_color_frame()
if not depth_frame or not color_frame:
return None
depth_image = np.asanyarray(depth_frame.get_data())
color_image = np.asanyarray(color_frame.get_data())
depth_intrin = depth_frame.profile.as_video_stream_profile().intrinsics
2025-10-09 16:31:21 +08:00
# 转换到 HSV 并提取红色区域
hsv = cv2.cvtColor(color_image, cv2.COLOR_BGR2HSV)
2025-10-09 16:31:21 +08:00
lower_red1, upper_red1 = np.array([0, 100, 100]), np.array([10, 255, 255])
lower_red2, upper_red2 = np.array([160, 100, 100]), np.array([179, 255, 255])
mask = cv2.inRange(hsv, lower_red1, upper_red1) | cv2.inRange(hsv, lower_red2, upper_red2)
2025-10-09 16:31:21 +08:00
# 平滑处理再检测圆
mask_blur = cv2.GaussianBlur(mask, (9, 9), 2)
2025-10-09 16:31:21 +08:00
circles = cv2.HoughCircles(mask_blur, cv2.HOUGH_GRADIENT, **hough_params)
2025-10-09 16:31:21 +08:00
closest_point, min_depth = None, float('inf')
if circles is not None:
circles = np.uint16(np.around(circles))
2025-10-09 16:31:21 +08:00
for u, v, r in circles[0, :]:
depth = depth_frame.get_distance(int(u), int(v))
if 0 < depth < min_depth:
min_depth = depth
2025-10-09 16:31:21 +08:00
closest_point = rs.rs2_deproject_pixel_to_point(depth_intrin, [int(u), int(v)], depth)
if vis_path:
cv2.circle(color_image, (u, v), r, (0, 255, 0), 2)
cv2.circle(color_image, (u, v), 6, (0, 0, 255), -1)
2025-10-09 16:31:21 +08:00
if vis_path and closest_point is not None:
cv2.imwrite(vis_path, color_image)
2025-10-09 16:31:21 +08:00
return closest_point
2025-10-09 16:31:21 +08:00
def main(serial="243122075614", avg_window=3, loop=True):
pipeline, align = init_realsense()
# robot = Robot("/home/lgv/cmvr/cmvr-es/config/cabin_robot.xml", "hc01")
2025-10-09 16:31:21 +08:00
try:
while True:
point_3d = get_closest_red_point(pipeline, align, vis_path="red_point.png")
if point_3d:
print("Closest red 3D point:", np.round(point_3d, 4))
else:
print("未检测到红点")
2025-10-09 16:31:21 +08:00
if not loop:
break
2025-10-09 16:31:21 +08:00
key = cv2.waitKey(1)
if key == 27: # ESC 键退出
break
2025-10-09 16:31:21 +08:00
except Exception as e:
print("Error:", e)
finally:
pipeline.stop()
cv2.destroyAllWindows()
2025-10-09 16:31:21 +08:00
if __name__ == "__main__":
2025-10-09 16:31:21 +08:00
main()